1 //===- Parsing, selection, and construction of pass pipelines -------------===//
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
7 //===----------------------------------------------------------------------===//
10 /// This file provides the implementation of the PassBuilder based on our
11 /// static pass registry as well as related functionality. It also provides
12 /// helpers to aid in analyzing, debugging, and testing passes and pass
15 //===----------------------------------------------------------------------===//
17 #include "llvm/Passes/PassBuilder.h"
18 #include "llvm/ADT/StringSwitch.h"
19 #include "llvm/Analysis/AliasAnalysis.h"
20 #include "llvm/Analysis/AliasAnalysisEvaluator.h"
21 #include "llvm/Analysis/AssumptionCache.h"
22 #include "llvm/Analysis/BasicAliasAnalysis.h"
23 #include "llvm/Analysis/BlockFrequencyInfo.h"
24 #include "llvm/Analysis/BranchProbabilityInfo.h"
25 #include "llvm/Analysis/CFGPrinter.h"
26 #include "llvm/Analysis/CFLAndersAliasAnalysis.h"
27 #include "llvm/Analysis/CFLSteensAliasAnalysis.h"
28 #include "llvm/Analysis/CGSCCPassManager.h"
29 #include "llvm/Analysis/CallGraph.h"
30 #include "llvm/Analysis/DemandedBits.h"
31 #include "llvm/Analysis/DependenceAnalysis.h"
32 #include "llvm/Analysis/DominanceFrontier.h"
33 #include "llvm/Analysis/GlobalsModRef.h"
34 #include "llvm/Analysis/IVUsers.h"
35 #include "llvm/Analysis/LazyCallGraph.h"
36 #include "llvm/Analysis/LazyValueInfo.h"
37 #include "llvm/Analysis/LoopAccessAnalysis.h"
38 #include "llvm/Analysis/LoopInfo.h"
39 #include "llvm/Analysis/MemoryDependenceAnalysis.h"
40 #include "llvm/Analysis/MemorySSA.h"
41 #include "llvm/Analysis/ModuleSummaryAnalysis.h"
42 #include "llvm/Analysis/OptimizationRemarkEmitter.h"
43 #include "llvm/Analysis/PhiValues.h"
44 #include "llvm/Analysis/PostDominators.h"
45 #include "llvm/Analysis/ProfileSummaryInfo.h"
46 #include "llvm/Analysis/RegionInfo.h"
47 #include "llvm/Analysis/ScalarEvolution.h"
48 #include "llvm/Analysis/ScalarEvolutionAliasAnalysis.h"
49 #include "llvm/Analysis/ScopedNoAliasAA.h"
50 #include "llvm/Analysis/StackSafetyAnalysis.h"
51 #include "llvm/Analysis/TargetLibraryInfo.h"
52 #include "llvm/Analysis/TargetTransformInfo.h"
53 #include "llvm/Analysis/TypeBasedAliasAnalysis.h"
54 #include "llvm/CodeGen/PreISelIntrinsicLowering.h"
55 #include "llvm/CodeGen/UnreachableBlockElim.h"
56 #include "llvm/IR/Dominators.h"
57 #include "llvm/IR/IRPrintingPasses.h"
58 #include "llvm/IR/PassManager.h"
59 #include "llvm/IR/SafepointIRVerifier.h"
60 #include "llvm/IR/Verifier.h"
61 #include "llvm/Support/Debug.h"
62 #include "llvm/Support/FormatVariadic.h"
63 #include "llvm/Support/Regex.h"
64 #include "llvm/Target/TargetMachine.h"
65 #include "llvm/Transforms/AggressiveInstCombine/AggressiveInstCombine.h"
66 #include "llvm/Transforms/IPO/AlwaysInliner.h"
67 #include "llvm/Transforms/IPO/ArgumentPromotion.h"
68 #include "llvm/Transforms/IPO/Attributor.h"
69 #include "llvm/Transforms/IPO/CalledValuePropagation.h"
70 #include "llvm/Transforms/IPO/ConstantMerge.h"
71 #include "llvm/Transforms/IPO/CrossDSOCFI.h"
72 #include "llvm/Transforms/IPO/DeadArgumentElimination.h"
73 #include "llvm/Transforms/IPO/ElimAvailExtern.h"
74 #include "llvm/Transforms/IPO/ForceFunctionAttrs.h"
75 #include "llvm/Transforms/IPO/FunctionAttrs.h"
76 #include "llvm/Transforms/IPO/FunctionImport.h"
77 #include "llvm/Transforms/IPO/GlobalDCE.h"
78 #include "llvm/Transforms/IPO/GlobalOpt.h"
79 #include "llvm/Transforms/IPO/GlobalSplit.h"
80 #include "llvm/Transforms/IPO/HotColdSplitting.h"
81 #include "llvm/Transforms/IPO/InferFunctionAttrs.h"
82 #include "llvm/Transforms/IPO/Inliner.h"
83 #include "llvm/Transforms/IPO/Internalize.h"
84 #include "llvm/Transforms/IPO/LowerTypeTests.h"
85 #include "llvm/Transforms/IPO/PartialInlining.h"
86 #include "llvm/Transforms/IPO/SCCP.h"
87 #include "llvm/Transforms/IPO/SampleProfile.h"
88 #include "llvm/Transforms/IPO/StripDeadPrototypes.h"
89 #include "llvm/Transforms/IPO/SyntheticCountsPropagation.h"
90 #include "llvm/Transforms/IPO/WholeProgramDevirt.h"
91 #include "llvm/Transforms/InstCombine/InstCombine.h"
92 #include "llvm/Transforms/Instrumentation.h"
93 #include "llvm/Transforms/Instrumentation/AddressSanitizer.h"
94 #include "llvm/Transforms/Instrumentation/BoundsChecking.h"
95 #include "llvm/Transforms/Instrumentation/CGProfile.h"
96 #include "llvm/Transforms/Instrumentation/ControlHeightReduction.h"
97 #include "llvm/Transforms/Instrumentation/GCOVProfiler.h"
98 #include "llvm/Transforms/Instrumentation/HWAddressSanitizer.h"
99 #include "llvm/Transforms/Instrumentation/InstrOrderFile.h"
100 #include "llvm/Transforms/Instrumentation/InstrProfiling.h"
101 #include "llvm/Transforms/Instrumentation/MemorySanitizer.h"
102 #include "llvm/Transforms/Instrumentation/PGOInstrumentation.h"
103 #include "llvm/Transforms/Instrumentation/PoisonChecking.h"
104 #include "llvm/Transforms/Instrumentation/ThreadSanitizer.h"
105 #include "llvm/Transforms/Scalar/ADCE.h"
106 #include "llvm/Transforms/Scalar/AlignmentFromAssumptions.h"
107 #include "llvm/Transforms/Scalar/BDCE.h"
108 #include "llvm/Transforms/Scalar/CallSiteSplitting.h"
109 #include "llvm/Transforms/Scalar/ConstantHoisting.h"
110 #include "llvm/Transforms/Scalar/CorrelatedValuePropagation.h"
111 #include "llvm/Transforms/Scalar/DCE.h"
112 #include "llvm/Transforms/Scalar/DeadStoreElimination.h"
113 #include "llvm/Transforms/Scalar/DivRemPairs.h"
114 #include "llvm/Transforms/Scalar/EarlyCSE.h"
115 #include "llvm/Transforms/Scalar/Float2Int.h"
116 #include "llvm/Transforms/Scalar/GVN.h"
117 #include "llvm/Transforms/Scalar/GuardWidening.h"
118 #include "llvm/Transforms/Scalar/IVUsersPrinter.h"
119 #include "llvm/Transforms/Scalar/IndVarSimplify.h"
120 #include "llvm/Transforms/Scalar/InductiveRangeCheckElimination.h"
121 #include "llvm/Transforms/Scalar/InstSimplifyPass.h"
122 #include "llvm/Transforms/Scalar/JumpThreading.h"
123 #include "llvm/Transforms/Scalar/LICM.h"
124 #include "llvm/Transforms/Scalar/LoopAccessAnalysisPrinter.h"
125 #include "llvm/Transforms/Scalar/LoopDataPrefetch.h"
126 #include "llvm/Transforms/Scalar/LoopDeletion.h"
127 #include "llvm/Transforms/Scalar/LoopDistribute.h"
128 #include "llvm/Transforms/Scalar/LoopFuse.h"
129 #include "llvm/Transforms/Scalar/LoopIdiomRecognize.h"
130 #include "llvm/Transforms/Scalar/LoopInstSimplify.h"
131 #include "llvm/Transforms/Scalar/LoopLoadElimination.h"
132 #include "llvm/Transforms/Scalar/LoopPassManager.h"
133 #include "llvm/Transforms/Scalar/LoopPredication.h"
134 #include "llvm/Transforms/Scalar/LoopRotation.h"
135 #include "llvm/Transforms/Scalar/LoopSimplifyCFG.h"
136 #include "llvm/Transforms/Scalar/LoopSink.h"
137 #include "llvm/Transforms/Scalar/LoopStrengthReduce.h"
138 #include "llvm/Transforms/Scalar/LoopUnrollAndJamPass.h"
139 #include "llvm/Transforms/Scalar/LoopUnrollPass.h"
140 #include "llvm/Transforms/Scalar/LowerAtomic.h"
141 #include "llvm/Transforms/Scalar/LowerExpectIntrinsic.h"
142 #include "llvm/Transforms/Scalar/LowerGuardIntrinsic.h"
143 #include "llvm/Transforms/Scalar/LowerWidenableCondition.h"
144 #include "llvm/Transforms/Scalar/MakeGuardsExplicit.h"
145 #include "llvm/Transforms/Scalar/MemCpyOptimizer.h"
146 #include "llvm/Transforms/Scalar/MergedLoadStoreMotion.h"
147 #include "llvm/Transforms/Scalar/MergeICmps.h"
148 #include "llvm/Transforms/Scalar/NaryReassociate.h"
149 #include "llvm/Transforms/Scalar/NewGVN.h"
150 #include "llvm/Transforms/Scalar/PartiallyInlineLibCalls.h"
151 #include "llvm/Transforms/Scalar/Reassociate.h"
152 #include "llvm/Transforms/Scalar/RewriteStatepointsForGC.h"
153 #include "llvm/Transforms/Scalar/SCCP.h"
154 #include "llvm/Transforms/Scalar/SROA.h"
155 #include "llvm/Transforms/Scalar/Scalarizer.h"
156 #include "llvm/Transforms/Scalar/SimpleLoopUnswitch.h"
157 #include "llvm/Transforms/Scalar/SimplifyCFG.h"
158 #include "llvm/Transforms/Scalar/Sink.h"
159 #include "llvm/Transforms/Scalar/SpeculateAroundPHIs.h"
160 #include "llvm/Transforms/Scalar/SpeculativeExecution.h"
161 #include "llvm/Transforms/Scalar/TailRecursionElimination.h"
162 #include "llvm/Transforms/Scalar/WarnMissedTransforms.h"
163 #include "llvm/Transforms/Utils/AddDiscriminators.h"
164 #include "llvm/Transforms/Utils/BreakCriticalEdges.h"
165 #include "llvm/Transforms/Utils/CanonicalizeAliases.h"
166 #include "llvm/Transforms/Utils/EntryExitInstrumenter.h"
167 #include "llvm/Transforms/Utils/LCSSA.h"
168 #include "llvm/Transforms/Utils/LibCallsShrinkWrap.h"
169 #include "llvm/Transforms/Utils/LoopSimplify.h"
170 #include "llvm/Transforms/Utils/LowerInvoke.h"
171 #include "llvm/Transforms/Utils/Mem2Reg.h"
172 #include "llvm/Transforms/Utils/NameAnonGlobals.h"
173 #include "llvm/Transforms/Utils/SymbolRewriter.h"
174 #include "llvm/Transforms/Vectorize/LoadStoreVectorizer.h"
175 #include "llvm/Transforms/Vectorize/LoopVectorize.h"
176 #include "llvm/Transforms/Vectorize/SLPVectorizer.h"
178 using namespace llvm
;
180 static cl::opt
<unsigned> MaxDevirtIterations("pm-max-devirt-iterations",
181 cl::ReallyHidden
, cl::init(4));
183 RunPartialInlining("enable-npm-partial-inlining", cl::init(false),
184 cl::Hidden
, cl::ZeroOrMore
,
185 cl::desc("Run Partial inlinining pass"));
188 RunNewGVN("enable-npm-newgvn", cl::init(false),
189 cl::Hidden
, cl::ZeroOrMore
,
190 cl::desc("Run NewGVN instead of GVN"));
192 static cl::opt
<bool> EnableGVNHoist(
193 "enable-npm-gvn-hoist", cl::init(false), cl::Hidden
,
194 cl::desc("Enable the GVN hoisting pass for the new PM (default = off)"));
196 static cl::opt
<bool> EnableGVNSink(
197 "enable-npm-gvn-sink", cl::init(false), cl::Hidden
,
198 cl::desc("Enable the GVN hoisting pass for the new PM (default = off)"));
200 static cl::opt
<bool> EnableUnrollAndJam(
201 "enable-npm-unroll-and-jam", cl::init(false), cl::Hidden
,
202 cl::desc("Enable the Unroll and Jam pass for the new PM (default = off)"));
204 static cl::opt
<bool> EnableSyntheticCounts(
205 "enable-npm-synthetic-counts", cl::init(false), cl::Hidden
, cl::ZeroOrMore
,
206 cl::desc("Run synthetic function entry count generation "
209 static Regex
DefaultAliasRegex(
210 "^(default|thinlto-pre-link|thinlto|lto-pre-link|lto)<(O[0123sz])>$");
212 // This option is used in simplifying testing SampleFDO optimizations for
215 EnableCHR("enable-chr-npm", cl::init(true), cl::Hidden
,
216 cl::desc("Enable control height reduction optimization (CHR)"));
218 PipelineTuningOptions::PipelineTuningOptions() {
219 LoopInterleaving
= EnableLoopInterleaving
;
220 LoopVectorization
= EnableLoopVectorization
;
221 SLPVectorization
= RunSLPVectorization
;
222 LoopUnrolling
= true;
223 ForgetAllSCEVInLoopUnroll
= ForgetSCEVInLoopUnroll
;
224 LicmMssaOptCap
= SetLicmMssaOptCap
;
225 LicmMssaNoAccForPromotionCap
= SetLicmMssaNoAccForPromotionCap
;
228 extern cl::opt
<bool> EnableHotColdSplit
;
229 extern cl::opt
<bool> EnableOrderFileInstrumentation
;
231 extern cl::opt
<bool> FlattenedProfileUsed
;
233 static bool isOptimizingForSize(PassBuilder::OptimizationLevel Level
) {
235 case PassBuilder::O0
:
236 case PassBuilder::O1
:
237 case PassBuilder::O2
:
238 case PassBuilder::O3
:
241 case PassBuilder::Os
:
242 case PassBuilder::Oz
:
245 llvm_unreachable("Invalid optimization level!");
250 /// No-op module pass which does nothing.
251 struct NoOpModulePass
{
252 PreservedAnalyses
run(Module
&M
, ModuleAnalysisManager
&) {
253 return PreservedAnalyses::all();
255 static StringRef
name() { return "NoOpModulePass"; }
258 /// No-op module analysis.
259 class NoOpModuleAnalysis
: public AnalysisInfoMixin
<NoOpModuleAnalysis
> {
260 friend AnalysisInfoMixin
<NoOpModuleAnalysis
>;
261 static AnalysisKey Key
;
265 Result
run(Module
&, ModuleAnalysisManager
&) { return Result(); }
266 static StringRef
name() { return "NoOpModuleAnalysis"; }
269 /// No-op CGSCC pass which does nothing.
270 struct NoOpCGSCCPass
{
271 PreservedAnalyses
run(LazyCallGraph::SCC
&C
, CGSCCAnalysisManager
&,
272 LazyCallGraph
&, CGSCCUpdateResult
&UR
) {
273 return PreservedAnalyses::all();
275 static StringRef
name() { return "NoOpCGSCCPass"; }
278 /// No-op CGSCC analysis.
279 class NoOpCGSCCAnalysis
: public AnalysisInfoMixin
<NoOpCGSCCAnalysis
> {
280 friend AnalysisInfoMixin
<NoOpCGSCCAnalysis
>;
281 static AnalysisKey Key
;
285 Result
run(LazyCallGraph::SCC
&, CGSCCAnalysisManager
&, LazyCallGraph
&G
) {
288 static StringRef
name() { return "NoOpCGSCCAnalysis"; }
291 /// No-op function pass which does nothing.
292 struct NoOpFunctionPass
{
293 PreservedAnalyses
run(Function
&F
, FunctionAnalysisManager
&) {
294 return PreservedAnalyses::all();
296 static StringRef
name() { return "NoOpFunctionPass"; }
299 /// No-op function analysis.
300 class NoOpFunctionAnalysis
: public AnalysisInfoMixin
<NoOpFunctionAnalysis
> {
301 friend AnalysisInfoMixin
<NoOpFunctionAnalysis
>;
302 static AnalysisKey Key
;
306 Result
run(Function
&, FunctionAnalysisManager
&) { return Result(); }
307 static StringRef
name() { return "NoOpFunctionAnalysis"; }
310 /// No-op loop pass which does nothing.
311 struct NoOpLoopPass
{
312 PreservedAnalyses
run(Loop
&L
, LoopAnalysisManager
&,
313 LoopStandardAnalysisResults
&, LPMUpdater
&) {
314 return PreservedAnalyses::all();
316 static StringRef
name() { return "NoOpLoopPass"; }
319 /// No-op loop analysis.
320 class NoOpLoopAnalysis
: public AnalysisInfoMixin
<NoOpLoopAnalysis
> {
321 friend AnalysisInfoMixin
<NoOpLoopAnalysis
>;
322 static AnalysisKey Key
;
326 Result
run(Loop
&, LoopAnalysisManager
&, LoopStandardAnalysisResults
&) {
329 static StringRef
name() { return "NoOpLoopAnalysis"; }
332 AnalysisKey
NoOpModuleAnalysis::Key
;
333 AnalysisKey
NoOpCGSCCAnalysis::Key
;
334 AnalysisKey
NoOpFunctionAnalysis::Key
;
335 AnalysisKey
NoOpLoopAnalysis::Key
;
337 } // End anonymous namespace.
339 void PassBuilder::invokePeepholeEPCallbacks(
340 FunctionPassManager
&FPM
, PassBuilder::OptimizationLevel Level
) {
341 for (auto &C
: PeepholeEPCallbacks
)
345 void PassBuilder::registerModuleAnalyses(ModuleAnalysisManager
&MAM
) {
346 #define MODULE_ANALYSIS(NAME, CREATE_PASS) \
347 MAM.registerPass([&] { return CREATE_PASS; });
348 #include "PassRegistry.def"
350 for (auto &C
: ModuleAnalysisRegistrationCallbacks
)
354 void PassBuilder::registerCGSCCAnalyses(CGSCCAnalysisManager
&CGAM
) {
355 #define CGSCC_ANALYSIS(NAME, CREATE_PASS) \
356 CGAM.registerPass([&] { return CREATE_PASS; });
357 #include "PassRegistry.def"
359 for (auto &C
: CGSCCAnalysisRegistrationCallbacks
)
363 void PassBuilder::registerFunctionAnalyses(FunctionAnalysisManager
&FAM
) {
364 #define FUNCTION_ANALYSIS(NAME, CREATE_PASS) \
365 FAM.registerPass([&] { return CREATE_PASS; });
366 #include "PassRegistry.def"
368 for (auto &C
: FunctionAnalysisRegistrationCallbacks
)
372 void PassBuilder::registerLoopAnalyses(LoopAnalysisManager
&LAM
) {
373 #define LOOP_ANALYSIS(NAME, CREATE_PASS) \
374 LAM.registerPass([&] { return CREATE_PASS; });
375 #include "PassRegistry.def"
377 for (auto &C
: LoopAnalysisRegistrationCallbacks
)
382 PassBuilder::buildFunctionSimplificationPipeline(OptimizationLevel Level
,
385 assert(Level
!= O0
&& "Must request optimizations!");
386 FunctionPassManager
FPM(DebugLogging
);
388 // Form SSA out of local memory accesses after breaking apart aggregates into
392 // Catch trivial redundancies
393 FPM
.addPass(EarlyCSEPass(true /* Enable mem-ssa. */));
395 // Hoisting of scalars and load expressions.
397 FPM
.addPass(GVNHoistPass());
399 // Global value numbering based sinking.
401 FPM
.addPass(GVNSinkPass());
402 FPM
.addPass(SimplifyCFGPass());
405 // Speculative execution if the target has divergent branches; otherwise nop.
406 FPM
.addPass(SpeculativeExecutionPass());
408 // Optimize based on known information about branches, and cleanup afterward.
409 FPM
.addPass(JumpThreadingPass());
410 FPM
.addPass(CorrelatedValuePropagationPass());
411 FPM
.addPass(SimplifyCFGPass());
413 FPM
.addPass(AggressiveInstCombinePass());
414 FPM
.addPass(InstCombinePass());
416 if (!isOptimizingForSize(Level
))
417 FPM
.addPass(LibCallsShrinkWrapPass());
419 invokePeepholeEPCallbacks(FPM
, Level
);
421 // For PGO use pipeline, try to optimize memory intrinsics such as memcpy
422 // using the size value profile. Don't perform this when optimizing for size.
423 if (PGOOpt
&& PGOOpt
->Action
== PGOOptions::IRUse
&&
424 !isOptimizingForSize(Level
))
425 FPM
.addPass(PGOMemOPSizeOpt());
427 FPM
.addPass(TailCallElimPass());
428 FPM
.addPass(SimplifyCFGPass());
430 // Form canonically associated expression trees, and simplify the trees using
431 // basic mathematical properties. For example, this will form (nearly)
432 // minimal multiplication trees.
433 FPM
.addPass(ReassociatePass());
435 // Add the primary loop simplification pipeline.
436 // FIXME: Currently this is split into two loop pass pipelines because we run
437 // some function passes in between them. These can and should be removed
438 // and/or replaced by scheduling the loop pass equivalents in the correct
439 // positions. But those equivalent passes aren't powerful enough yet.
440 // Specifically, `SimplifyCFGPass` and `InstCombinePass` are currently still
441 // used. We have `LoopSimplifyCFGPass` which isn't yet powerful enough yet to
442 // fully replace `SimplifyCFGPass`, and the closest to the other we have is
443 // `LoopInstSimplify`.
444 LoopPassManager
LPM1(DebugLogging
), LPM2(DebugLogging
);
446 // Simplify the loop body. We do this initially to clean up after other loop
447 // passes run, either when iterating on a loop or on inner loops with
448 // implications on the outer loop.
449 LPM1
.addPass(LoopInstSimplifyPass());
450 LPM1
.addPass(LoopSimplifyCFGPass());
452 // Rotate Loop - disable header duplication at -Oz
453 LPM1
.addPass(LoopRotatePass(Level
!= Oz
));
454 LPM1
.addPass(LICMPass(PTO
.LicmMssaOptCap
, PTO
.LicmMssaNoAccForPromotionCap
));
455 LPM1
.addPass(SimpleLoopUnswitchPass());
456 LPM2
.addPass(IndVarSimplifyPass());
457 LPM2
.addPass(LoopIdiomRecognizePass());
459 for (auto &C
: LateLoopOptimizationsEPCallbacks
)
462 LPM2
.addPass(LoopDeletionPass());
463 // Do not enable unrolling in PreLinkThinLTO phase during sample PGO
464 // because it changes IR to makes profile annotation in back compile
466 if ((Phase
!= ThinLTOPhase::PreLink
|| !PGOOpt
||
467 PGOOpt
->Action
!= PGOOptions::SampleUse
) &&
470 LoopFullUnrollPass(Level
, false, PTO
.ForgetAllSCEVInLoopUnroll
));
472 for (auto &C
: LoopOptimizerEndEPCallbacks
)
475 // We provide the opt remark emitter pass for LICM to use. We only need to do
476 // this once as it is immutable.
477 FPM
.addPass(RequireAnalysisPass
<OptimizationRemarkEmitterAnalysis
, Function
>());
478 FPM
.addPass(createFunctionToLoopPassAdaptor(std::move(LPM1
), DebugLogging
));
479 FPM
.addPass(SimplifyCFGPass());
480 FPM
.addPass(InstCombinePass());
481 FPM
.addPass(createFunctionToLoopPassAdaptor(std::move(LPM2
), DebugLogging
));
483 // Eliminate redundancies.
485 // These passes add substantial compile time so skip them at O1.
486 FPM
.addPass(MergedLoadStoreMotionPass());
488 FPM
.addPass(NewGVNPass());
493 // Specially optimize memory movement as it doesn't look like dataflow in SSA.
494 FPM
.addPass(MemCpyOptPass());
496 // Sparse conditional constant propagation.
497 // FIXME: It isn't clear why we do this *after* loop passes rather than
499 FPM
.addPass(SCCPPass());
501 // Delete dead bit computations (instcombine runs after to fold away the dead
502 // computations, and then ADCE will run later to exploit any new DCE
503 // opportunities that creates).
504 FPM
.addPass(BDCEPass());
506 // Run instcombine after redundancy and dead bit elimination to exploit
507 // opportunities opened up by them.
508 FPM
.addPass(InstCombinePass());
509 invokePeepholeEPCallbacks(FPM
, Level
);
511 // Re-consider control flow based optimizations after redundancy elimination,
513 FPM
.addPass(JumpThreadingPass());
514 FPM
.addPass(CorrelatedValuePropagationPass());
515 FPM
.addPass(DSEPass());
516 FPM
.addPass(createFunctionToLoopPassAdaptor(
517 LICMPass(PTO
.LicmMssaOptCap
, PTO
.LicmMssaNoAccForPromotionCap
),
520 for (auto &C
: ScalarOptimizerLateEPCallbacks
)
523 // Finally, do an expensive DCE pass to catch all the dead code exposed by
524 // the simplifications and basic cleanup after all the simplifications.
525 FPM
.addPass(ADCEPass());
526 FPM
.addPass(SimplifyCFGPass());
527 FPM
.addPass(InstCombinePass());
528 invokePeepholeEPCallbacks(FPM
, Level
);
530 if (EnableCHR
&& Level
== O3
&& PGOOpt
&&
531 (PGOOpt
->Action
== PGOOptions::IRUse
||
532 PGOOpt
->Action
== PGOOptions::SampleUse
))
533 FPM
.addPass(ControlHeightReductionPass());
538 void PassBuilder::addPGOInstrPasses(ModulePassManager
&MPM
, bool DebugLogging
,
539 PassBuilder::OptimizationLevel Level
,
540 bool RunProfileGen
, bool IsCS
,
541 std::string ProfileFile
,
542 std::string ProfileRemappingFile
) {
543 // Generally running simplification passes and the inliner with an high
544 // threshold results in smaller executables, but there may be cases where
545 // the size grows, so let's be conservative here and skip this simplification
546 // at -Os/Oz. We will not do this inline for context sensistive PGO (when
548 if (!isOptimizingForSize(Level
) && !IsCS
) {
551 // In the old pass manager, this is a cl::opt. Should still this be one?
552 IP
.DefaultThreshold
= 75;
554 // FIXME: The hint threshold has the same value used by the regular inliner.
555 // This should probably be lowered after performance testing.
556 // FIXME: this comment is cargo culted from the old pass manager, revisit).
557 IP
.HintThreshold
= 325;
559 CGSCCPassManager
CGPipeline(DebugLogging
);
561 CGPipeline
.addPass(InlinerPass(IP
));
563 FunctionPassManager FPM
;
565 FPM
.addPass(EarlyCSEPass()); // Catch trivial redundancies.
566 FPM
.addPass(SimplifyCFGPass()); // Merge & remove basic blocks.
567 FPM
.addPass(InstCombinePass()); // Combine silly sequences.
568 invokePeepholeEPCallbacks(FPM
, Level
);
570 CGPipeline
.addPass(createCGSCCToFunctionPassAdaptor(std::move(FPM
)));
572 MPM
.addPass(createModuleToPostOrderCGSCCPassAdaptor(std::move(CGPipeline
)));
575 // Delete anything that is now dead to make sure that we don't instrument
576 // dead code. Instrumentation can end up keeping dead code around and
577 // dramatically increase code size.
578 MPM
.addPass(GlobalDCEPass());
581 MPM
.addPass(PGOInstrumentationGen(IsCS
));
583 FunctionPassManager FPM
;
585 createFunctionToLoopPassAdaptor(LoopRotatePass(), DebugLogging
));
586 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(FPM
)));
588 // Add the profile lowering pass.
589 InstrProfOptions Options
;
590 if (!ProfileFile
.empty())
591 Options
.InstrProfileOutput
= ProfileFile
;
592 Options
.DoCounterPromotion
= true;
593 Options
.UseBFIInPromotion
= IsCS
;
594 MPM
.addPass(InstrProfiling(Options
, IsCS
));
595 } else if (!ProfileFile
.empty()) {
596 MPM
.addPass(PGOInstrumentationUse(ProfileFile
, ProfileRemappingFile
, IsCS
));
597 // Cache ProfileSummaryAnalysis once to avoid the potential need to insert
598 // RequireAnalysisPass for PSI before subsequent non-module passes.
599 MPM
.addPass(RequireAnalysisPass
<ProfileSummaryAnalysis
, Module
>());
604 getInlineParamsFromOptLevel(PassBuilder::OptimizationLevel Level
) {
605 auto O3
= PassBuilder::O3
;
606 unsigned OptLevel
= Level
> O3
? 2 : Level
;
607 unsigned SizeLevel
= Level
> O3
? Level
- O3
: 0;
608 return getInlineParams(OptLevel
, SizeLevel
);
612 PassBuilder::buildModuleSimplificationPipeline(OptimizationLevel Level
,
615 ModulePassManager
MPM(DebugLogging
);
617 bool HasSampleProfile
= PGOOpt
&& (PGOOpt
->Action
== PGOOptions::SampleUse
);
619 // In ThinLTO mode, when flattened profile is used, all the available
620 // profile information will be annotated in PreLink phase so there is
621 // no need to load the profile again in PostLink.
622 bool LoadSampleProfile
=
624 !(FlattenedProfileUsed
&& Phase
== ThinLTOPhase::PostLink
);
626 // During the ThinLTO backend phase we perform early indirect call promotion
627 // here, before globalopt. Otherwise imported available_externally functions
628 // look unreferenced and are removed. If we are going to load the sample
629 // profile then defer until later.
630 // TODO: See if we can move later and consolidate with the location where
631 // we perform ICP when we are loading a sample profile.
632 // TODO: We pass HasSampleProfile (whether there was a sample profile file
633 // passed to the compile) to the SamplePGO flag of ICP. This is used to
634 // determine whether the new direct calls are annotated with prof metadata.
635 // Ideally this should be determined from whether the IR is annotated with
636 // sample profile, and not whether the a sample profile was provided on the
637 // command line. E.g. for flattened profiles where we will not be reloading
638 // the sample profile in the ThinLTO backend, we ideally shouldn't have to
639 // provide the sample profile file.
640 if (Phase
== ThinLTOPhase::PostLink
&& !LoadSampleProfile
)
641 MPM
.addPass(PGOIndirectCallPromotion(true /* InLTO */, HasSampleProfile
));
643 // Do basic inference of function attributes from known properties of system
644 // libraries and other oracles.
645 MPM
.addPass(InferFunctionAttrsPass());
647 // Create an early function pass manager to cleanup the output of the
649 FunctionPassManager
EarlyFPM(DebugLogging
);
650 EarlyFPM
.addPass(SimplifyCFGPass());
651 EarlyFPM
.addPass(SROA());
652 EarlyFPM
.addPass(EarlyCSEPass());
653 EarlyFPM
.addPass(LowerExpectIntrinsicPass());
655 EarlyFPM
.addPass(CallSiteSplittingPass());
657 // In SamplePGO ThinLTO backend, we need instcombine before profile annotation
658 // to convert bitcast to direct calls so that they can be inlined during the
659 // profile annotation prepration step.
660 // More details about SamplePGO design can be found in:
661 // https://research.google.com/pubs/pub45290.html
662 // FIXME: revisit how SampleProfileLoad/Inliner/ICP is structured.
663 if (LoadSampleProfile
)
664 EarlyFPM
.addPass(InstCombinePass());
665 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(EarlyFPM
)));
667 if (LoadSampleProfile
) {
668 // Annotate sample profile right after early FPM to ensure freshness of
670 MPM
.addPass(SampleProfileLoaderPass(PGOOpt
->ProfileFile
,
671 PGOOpt
->ProfileRemappingFile
,
672 Phase
== ThinLTOPhase::PreLink
));
673 // Cache ProfileSummaryAnalysis once to avoid the potential need to insert
674 // RequireAnalysisPass for PSI before subsequent non-module passes.
675 MPM
.addPass(RequireAnalysisPass
<ProfileSummaryAnalysis
, Module
>());
676 // Do not invoke ICP in the ThinLTOPrelink phase as it makes it hard
677 // for the profile annotation to be accurate in the ThinLTO backend.
678 if (Phase
!= ThinLTOPhase::PreLink
)
679 // We perform early indirect call promotion here, before globalopt.
680 // This is important for the ThinLTO backend phase because otherwise
681 // imported available_externally functions look unreferenced and are
683 MPM
.addPass(PGOIndirectCallPromotion(Phase
== ThinLTOPhase::PostLink
,
684 true /* SamplePGO */));
687 // Interprocedural constant propagation now that basic cleanup has occurred
688 // and prior to optimizing globals.
689 // FIXME: This position in the pipeline hasn't been carefully considered in
690 // years, it should be re-analyzed.
691 MPM
.addPass(IPSCCPPass());
693 // Attach metadata to indirect call sites indicating the set of functions
694 // they may target at run-time. This should follow IPSCCP.
695 MPM
.addPass(CalledValuePropagationPass());
697 // Optimize globals to try and fold them into constants.
698 MPM
.addPass(GlobalOptPass());
700 // Promote any localized globals to SSA registers.
701 // FIXME: Should this instead by a run of SROA?
702 // FIXME: We should probably run instcombine and simplify-cfg afterward to
703 // delete control flows that are dead once globals have been folded to
705 MPM
.addPass(createModuleToFunctionPassAdaptor(PromotePass()));
707 // Remove any dead arguments exposed by cleanups and constand folding
709 MPM
.addPass(DeadArgumentEliminationPass());
711 // Create a small function pass pipeline to cleanup after all the global
713 FunctionPassManager
GlobalCleanupPM(DebugLogging
);
714 GlobalCleanupPM
.addPass(InstCombinePass());
715 invokePeepholeEPCallbacks(GlobalCleanupPM
, Level
);
717 GlobalCleanupPM
.addPass(SimplifyCFGPass());
718 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(GlobalCleanupPM
)));
720 // Add all the requested passes for instrumentation PGO, if requested.
721 if (PGOOpt
&& Phase
!= ThinLTOPhase::PostLink
&&
722 (PGOOpt
->Action
== PGOOptions::IRInstr
||
723 PGOOpt
->Action
== PGOOptions::IRUse
)) {
724 addPGOInstrPasses(MPM
, DebugLogging
, Level
,
725 /* RunProfileGen */ PGOOpt
->Action
== PGOOptions::IRInstr
,
726 /* IsCS */ false, PGOOpt
->ProfileFile
,
727 PGOOpt
->ProfileRemappingFile
);
728 MPM
.addPass(PGOIndirectCallPromotion(false, false));
730 if (PGOOpt
&& Phase
!= ThinLTOPhase::PostLink
&&
731 PGOOpt
->CSAction
== PGOOptions::CSIRInstr
)
732 MPM
.addPass(PGOInstrumentationGenCreateVar(PGOOpt
->CSProfileGenFile
));
734 // Synthesize function entry counts for non-PGO compilation.
735 if (EnableSyntheticCounts
&& !PGOOpt
)
736 MPM
.addPass(SyntheticCountsPropagation());
738 // Require the GlobalsAA analysis for the module so we can query it within
739 // the CGSCC pipeline.
740 MPM
.addPass(RequireAnalysisPass
<GlobalsAA
, Module
>());
742 // Require the ProfileSummaryAnalysis for the module so we can query it within
744 MPM
.addPass(RequireAnalysisPass
<ProfileSummaryAnalysis
, Module
>());
746 // Now begin the main postorder CGSCC pipeline.
747 // FIXME: The current CGSCC pipeline has its origins in the legacy pass
748 // manager and trying to emulate its precise behavior. Much of this doesn't
749 // make a lot of sense and we should revisit the core CGSCC structure.
750 CGSCCPassManager
MainCGPipeline(DebugLogging
);
752 // Note: historically, the PruneEH pass was run first to deduce nounwind and
753 // generally clean up exception handling overhead. It isn't clear this is
754 // valuable as the inliner doesn't currently care whether it is inlining an
757 // Run the inliner first. The theory is that we are walking bottom-up and so
758 // the callees have already been fully optimized, and we want to inline them
759 // into the callers so that our optimizations can reflect that.
760 // For PreLinkThinLTO pass, we disable hot-caller heuristic for sample PGO
761 // because it makes profile annotation in the backend inaccurate.
762 InlineParams IP
= getInlineParamsFromOptLevel(Level
);
763 if (Phase
== ThinLTOPhase::PreLink
&& PGOOpt
&&
764 PGOOpt
->Action
== PGOOptions::SampleUse
)
765 IP
.HotCallSiteThreshold
= 0;
766 MainCGPipeline
.addPass(InlinerPass(IP
));
768 // Now deduce any function attributes based in the current code.
769 MainCGPipeline
.addPass(PostOrderFunctionAttrsPass());
771 // When at O3 add argument promotion to the pass pipeline.
772 // FIXME: It isn't at all clear why this should be limited to O3.
774 MainCGPipeline
.addPass(ArgumentPromotionPass());
776 // Lastly, add the core function simplification pipeline nested inside the
778 MainCGPipeline
.addPass(createCGSCCToFunctionPassAdaptor(
779 buildFunctionSimplificationPipeline(Level
, Phase
, DebugLogging
)));
781 for (auto &C
: CGSCCOptimizerLateEPCallbacks
)
782 C(MainCGPipeline
, Level
);
784 // We wrap the CGSCC pipeline in a devirtualization repeater. This will try
785 // to detect when we devirtualize indirect calls and iterate the SCC passes
786 // in that case to try and catch knock-on inlining or function attrs
787 // opportunities. Then we add it to the module pipeline by walking the SCCs
788 // in postorder (or bottom-up).
790 createModuleToPostOrderCGSCCPassAdaptor(createDevirtSCCRepeatedPass(
791 std::move(MainCGPipeline
), MaxDevirtIterations
)));
796 ModulePassManager
PassBuilder::buildModuleOptimizationPipeline(
797 OptimizationLevel Level
, bool DebugLogging
, bool LTOPreLink
) {
798 ModulePassManager
MPM(DebugLogging
);
800 // Optimize globals now that the module is fully simplified.
801 MPM
.addPass(GlobalOptPass());
802 MPM
.addPass(GlobalDCEPass());
804 // Run partial inlining pass to partially inline functions that have
806 if (RunPartialInlining
)
807 MPM
.addPass(PartialInlinerPass());
809 // Remove avail extern fns and globals definitions since we aren't compiling
810 // an object file for later LTO. For LTO we want to preserve these so they
811 // are eligible for inlining at link-time. Note if they are unreferenced they
812 // will be removed by GlobalDCE later, so this only impacts referenced
813 // available externally globals. Eventually they will be suppressed during
814 // codegen, but eliminating here enables more opportunity for GlobalDCE as it
815 // may make globals referenced by available external functions dead and saves
816 // running remaining passes on the eliminated functions. These should be
817 // preserved during prelinking for link-time inlining decisions.
819 MPM
.addPass(EliminateAvailableExternallyPass());
821 if (EnableOrderFileInstrumentation
)
822 MPM
.addPass(InstrOrderFilePass());
824 // Do RPO function attribute inference across the module to forward-propagate
825 // attributes where applicable.
826 // FIXME: Is this really an optimization rather than a canonicalization?
827 MPM
.addPass(ReversePostOrderFunctionAttrsPass());
829 // Do a post inline PGO instrumentation and use pass. This is a context
830 // sensitive PGO pass. We don't want to do this in LTOPreLink phrase as
831 // cross-module inline has not been done yet. The context sensitive
832 // instrumentation is after all the inlines are done.
833 if (!LTOPreLink
&& PGOOpt
) {
834 if (PGOOpt
->CSAction
== PGOOptions::CSIRInstr
)
835 addPGOInstrPasses(MPM
, DebugLogging
, Level
, /* RunProfileGen */ true,
836 /* IsCS */ true, PGOOpt
->CSProfileGenFile
,
837 PGOOpt
->ProfileRemappingFile
);
838 else if (PGOOpt
->CSAction
== PGOOptions::CSIRUse
)
839 addPGOInstrPasses(MPM
, DebugLogging
, Level
, /* RunProfileGen */ false,
840 /* IsCS */ true, PGOOpt
->ProfileFile
,
841 PGOOpt
->ProfileRemappingFile
);
844 // Re-require GloblasAA here prior to function passes. This is particularly
845 // useful as the above will have inlined, DCE'ed, and function-attr
846 // propagated everything. We should at this point have a reasonably minimal
847 // and richly annotated call graph. By computing aliasing and mod/ref
848 // information for all local globals here, the late loop passes and notably
849 // the vectorizer will be able to use them to help recognize vectorizable
850 // memory operations.
851 MPM
.addPass(RequireAnalysisPass
<GlobalsAA
, Module
>());
853 FunctionPassManager
OptimizePM(DebugLogging
);
854 OptimizePM
.addPass(Float2IntPass());
855 // FIXME: We need to run some loop optimizations to re-rotate loops after
856 // simplify-cfg and others undo their rotation.
858 // Optimize the loop execution. These passes operate on entire loop nests
859 // rather than on each loop in an inside-out manner, and so they are actually
862 for (auto &C
: VectorizerStartEPCallbacks
)
863 C(OptimizePM
, Level
);
865 // First rotate loops that may have been un-rotated by prior passes.
867 createFunctionToLoopPassAdaptor(LoopRotatePass(), DebugLogging
));
869 // Distribute loops to allow partial vectorization. I.e. isolate dependences
870 // into separate loop that would otherwise inhibit vectorization. This is
871 // currently only performed for loops marked with the metadata
872 // llvm.loop.distribute=true or when -enable-loop-distribute is specified.
873 OptimizePM
.addPass(LoopDistributePass());
875 // Now run the core loop vectorizer.
876 OptimizePM
.addPass(LoopVectorizePass(
877 LoopVectorizeOptions(!PTO
.LoopInterleaving
, !PTO
.LoopVectorization
)));
879 // Eliminate loads by forwarding stores from the previous iteration to loads
880 // of the current iteration.
881 OptimizePM
.addPass(LoopLoadEliminationPass());
883 // Cleanup after the loop optimization passes.
884 OptimizePM
.addPass(InstCombinePass());
886 // Now that we've formed fast to execute loop structures, we do further
887 // optimizations. These are run afterward as they might block doing complex
888 // analyses and transforms such as what are needed for loop vectorization.
890 // Cleanup after loop vectorization, etc. Simplification passes like CVP and
891 // GVN, loop transforms, and others have already run, so it's now better to
892 // convert to more optimized IR using more aggressive simplify CFG options.
893 // The extra sinking transform can create larger basic blocks, so do this
894 // before SLP vectorization.
895 OptimizePM
.addPass(SimplifyCFGPass(SimplifyCFGOptions().
896 forwardSwitchCondToPhi(true).
897 convertSwitchToLookupTable(true).
898 needCanonicalLoops(false).
899 sinkCommonInsts(true)));
901 // Optimize parallel scalar instruction chains into SIMD instructions.
902 if (PTO
.SLPVectorization
)
903 OptimizePM
.addPass(SLPVectorizerPass());
905 OptimizePM
.addPass(InstCombinePass());
907 // Unroll small loops to hide loop backedge latency and saturate any parallel
908 // execution resources of an out-of-order processor. We also then need to
909 // clean up redundancies and loop invariant code.
910 // FIXME: It would be really good to use a loop-integrated instruction
911 // combiner for cleanup here so that the unrolling and LICM can be pipelined
912 // across the loop nests.
913 // We do UnrollAndJam in a separate LPM to ensure it happens before unroll
914 if (EnableUnrollAndJam
) {
916 createFunctionToLoopPassAdaptor(LoopUnrollAndJamPass(Level
)));
918 if (PTO
.LoopUnrolling
)
919 OptimizePM
.addPass(LoopUnrollPass(
920 LoopUnrollOptions(Level
, false, PTO
.ForgetAllSCEVInLoopUnroll
)));
921 OptimizePM
.addPass(WarnMissedTransformationsPass());
922 OptimizePM
.addPass(InstCombinePass());
923 OptimizePM
.addPass(RequireAnalysisPass
<OptimizationRemarkEmitterAnalysis
, Function
>());
924 OptimizePM
.addPass(createFunctionToLoopPassAdaptor(
925 LICMPass(PTO
.LicmMssaOptCap
, PTO
.LicmMssaNoAccForPromotionCap
),
928 // Now that we've vectorized and unrolled loops, we may have more refined
929 // alignment information, try to re-derive it here.
930 OptimizePM
.addPass(AlignmentFromAssumptionsPass());
932 // Split out cold code. Splitting is done late to avoid hiding context from
933 // other optimizations and inadvertently regressing performance. The tradeoff
934 // is that this has a higher code size cost than splitting early.
935 if (EnableHotColdSplit
&& !LTOPreLink
)
936 MPM
.addPass(HotColdSplittingPass());
938 // LoopSink pass sinks instructions hoisted by LICM, which serves as a
939 // canonicalization pass that enables other optimizations. As a result,
940 // LoopSink pass needs to be a very late IR pass to avoid undoing LICM
942 OptimizePM
.addPass(LoopSinkPass());
944 // And finally clean up LCSSA form before generating code.
945 OptimizePM
.addPass(InstSimplifyPass());
947 // This hoists/decomposes div/rem ops. It should run after other sink/hoist
948 // passes to avoid re-sinking, but before SimplifyCFG because it can allow
949 // flattening of blocks.
950 OptimizePM
.addPass(DivRemPairsPass());
952 // LoopSink (and other loop passes since the last simplifyCFG) might have
953 // resulted in single-entry-single-exit or empty blocks. Clean up the CFG.
954 OptimizePM
.addPass(SimplifyCFGPass());
956 // Optimize PHIs by speculating around them when profitable. Note that this
957 // pass needs to be run after any PRE or similar pass as it is essentially
958 // inserting redundancies into the program. This even includes SimplifyCFG.
959 OptimizePM
.addPass(SpeculateAroundPHIsPass());
961 for (auto &C
: OptimizerLastEPCallbacks
)
962 C(OptimizePM
, Level
);
964 // Add the core optimizing pipeline.
965 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(OptimizePM
)));
967 MPM
.addPass(CGProfilePass());
969 // Now we need to do some global optimization transforms.
970 // FIXME: It would seem like these should come first in the optimization
971 // pipeline and maybe be the bottom of the canonicalization pipeline? Weird
973 MPM
.addPass(GlobalDCEPass());
974 MPM
.addPass(ConstantMergePass());
980 PassBuilder::buildPerModuleDefaultPipeline(OptimizationLevel Level
,
981 bool DebugLogging
, bool LTOPreLink
) {
982 assert(Level
!= O0
&& "Must request optimizations for the default pipeline!");
984 ModulePassManager
MPM(DebugLogging
);
986 // Force any function attributes we want the rest of the pipeline to observe.
987 MPM
.addPass(ForceFunctionAttrsPass());
989 // Apply module pipeline start EP callback.
990 for (auto &C
: PipelineStartEPCallbacks
)
993 if (PGOOpt
&& PGOOpt
->SamplePGOSupport
)
994 MPM
.addPass(createModuleToFunctionPassAdaptor(AddDiscriminatorsPass()));
996 // Add the core simplification pipeline.
997 MPM
.addPass(buildModuleSimplificationPipeline(Level
, ThinLTOPhase::None
,
1000 // Now add the optimization pipeline.
1001 MPM
.addPass(buildModuleOptimizationPipeline(Level
, DebugLogging
, LTOPreLink
));
1007 PassBuilder::buildThinLTOPreLinkDefaultPipeline(OptimizationLevel Level
,
1008 bool DebugLogging
) {
1009 assert(Level
!= O0
&& "Must request optimizations for the default pipeline!");
1011 ModulePassManager
MPM(DebugLogging
);
1013 // Force any function attributes we want the rest of the pipeline to observe.
1014 MPM
.addPass(ForceFunctionAttrsPass());
1016 if (PGOOpt
&& PGOOpt
->SamplePGOSupport
)
1017 MPM
.addPass(createModuleToFunctionPassAdaptor(AddDiscriminatorsPass()));
1019 // Apply module pipeline start EP callback.
1020 for (auto &C
: PipelineStartEPCallbacks
)
1023 // If we are planning to perform ThinLTO later, we don't bloat the code with
1024 // unrolling/vectorization/... now. Just simplify the module as much as we
1026 MPM
.addPass(buildModuleSimplificationPipeline(Level
, ThinLTOPhase::PreLink
,
1029 // Run partial inlining pass to partially inline functions that have
1031 // FIXME: It isn't clear whether this is really the right place to run this
1032 // in ThinLTO. Because there is another canonicalization and simplification
1033 // phase that will run after the thin link, running this here ends up with
1034 // less information than will be available later and it may grow functions in
1035 // ways that aren't beneficial.
1036 if (RunPartialInlining
)
1037 MPM
.addPass(PartialInlinerPass());
1039 // Reduce the size of the IR as much as possible.
1040 MPM
.addPass(GlobalOptPass());
1045 ModulePassManager
PassBuilder::buildThinLTODefaultPipeline(
1046 OptimizationLevel Level
, bool DebugLogging
,
1047 const ModuleSummaryIndex
*ImportSummary
) {
1048 ModulePassManager
MPM(DebugLogging
);
1050 if (ImportSummary
) {
1051 // These passes import type identifier resolutions for whole-program
1052 // devirtualization and CFI. They must run early because other passes may
1053 // disturb the specific instruction patterns that these passes look for,
1054 // creating dependencies on resolutions that may not appear in the summary.
1056 // For example, GVN may transform the pattern assume(type.test) appearing in
1057 // two basic blocks into assume(phi(type.test, type.test)), which would
1058 // transform a dependency on a WPD resolution into a dependency on a type
1059 // identifier resolution for CFI.
1061 // Also, WPD has access to more precise information than ICP and can
1062 // devirtualize more effectively, so it should operate on the IR first.
1064 // The WPD and LowerTypeTest passes need to run at -O0 to lower type
1065 // metadata and intrinsics.
1066 MPM
.addPass(WholeProgramDevirtPass(nullptr, ImportSummary
));
1067 MPM
.addPass(LowerTypeTestsPass(nullptr, ImportSummary
));
1073 // Force any function attributes we want the rest of the pipeline to observe.
1074 MPM
.addPass(ForceFunctionAttrsPass());
1076 // Add the core simplification pipeline.
1077 MPM
.addPass(buildModuleSimplificationPipeline(Level
, ThinLTOPhase::PostLink
,
1080 // Now add the optimization pipeline.
1081 MPM
.addPass(buildModuleOptimizationPipeline(Level
, DebugLogging
));
1087 PassBuilder::buildLTOPreLinkDefaultPipeline(OptimizationLevel Level
,
1088 bool DebugLogging
) {
1089 assert(Level
!= O0
&& "Must request optimizations for the default pipeline!");
1090 // FIXME: We should use a customized pre-link pipeline!
1091 return buildPerModuleDefaultPipeline(Level
, DebugLogging
,
1092 /* LTOPreLink */true);
1096 PassBuilder::buildLTODefaultPipeline(OptimizationLevel Level
, bool DebugLogging
,
1097 ModuleSummaryIndex
*ExportSummary
) {
1098 ModulePassManager
MPM(DebugLogging
);
1101 // The WPD and LowerTypeTest passes need to run at -O0 to lower type
1102 // metadata and intrinsics.
1103 MPM
.addPass(WholeProgramDevirtPass(ExportSummary
, nullptr));
1104 MPM
.addPass(LowerTypeTestsPass(ExportSummary
, nullptr));
1108 if (PGOOpt
&& PGOOpt
->Action
== PGOOptions::SampleUse
) {
1109 // Load sample profile before running the LTO optimization pipeline.
1110 MPM
.addPass(SampleProfileLoaderPass(PGOOpt
->ProfileFile
,
1111 PGOOpt
->ProfileRemappingFile
,
1112 false /* ThinLTOPhase::PreLink */));
1113 // Cache ProfileSummaryAnalysis once to avoid the potential need to insert
1114 // RequireAnalysisPass for PSI before subsequent non-module passes.
1115 MPM
.addPass(RequireAnalysisPass
<ProfileSummaryAnalysis
, Module
>());
1118 // Remove unused virtual tables to improve the quality of code generated by
1119 // whole-program devirtualization and bitset lowering.
1120 MPM
.addPass(GlobalDCEPass());
1122 // Force any function attributes we want the rest of the pipeline to observe.
1123 MPM
.addPass(ForceFunctionAttrsPass());
1125 // Do basic inference of function attributes from known properties of system
1126 // libraries and other oracles.
1127 MPM
.addPass(InferFunctionAttrsPass());
1130 FunctionPassManager
EarlyFPM(DebugLogging
);
1131 EarlyFPM
.addPass(CallSiteSplittingPass());
1132 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(EarlyFPM
)));
1134 // Indirect call promotion. This should promote all the targets that are
1135 // left by the earlier promotion pass that promotes intra-module targets.
1136 // This two-step promotion is to save the compile time. For LTO, it should
1137 // produce the same result as if we only do promotion here.
1138 MPM
.addPass(PGOIndirectCallPromotion(
1139 true /* InLTO */, PGOOpt
&& PGOOpt
->Action
== PGOOptions::SampleUse
));
1140 // Propagate constants at call sites into the functions they call. This
1141 // opens opportunities for globalopt (and inlining) by substituting function
1142 // pointers passed as arguments to direct uses of functions.
1143 MPM
.addPass(IPSCCPPass());
1145 // Attach metadata to indirect call sites indicating the set of functions
1146 // they may target at run-time. This should follow IPSCCP.
1147 MPM
.addPass(CalledValuePropagationPass());
1150 // Now deduce any function attributes based in the current code.
1151 MPM
.addPass(createModuleToPostOrderCGSCCPassAdaptor(
1152 PostOrderFunctionAttrsPass()));
1154 // Do RPO function attribute inference across the module to forward-propagate
1155 // attributes where applicable.
1156 // FIXME: Is this really an optimization rather than a canonicalization?
1157 MPM
.addPass(ReversePostOrderFunctionAttrsPass());
1159 // Use in-range annotations on GEP indices to split globals where beneficial.
1160 MPM
.addPass(GlobalSplitPass());
1162 // Run whole program optimization of virtual call when the list of callees
1164 MPM
.addPass(WholeProgramDevirtPass(ExportSummary
, nullptr));
1166 // Stop here at -O1.
1168 // The LowerTypeTestsPass needs to run to lower type metadata and the
1169 // type.test intrinsics. The pass does nothing if CFI is disabled.
1170 MPM
.addPass(LowerTypeTestsPass(ExportSummary
, nullptr));
1174 // Optimize globals to try and fold them into constants.
1175 MPM
.addPass(GlobalOptPass());
1177 // Promote any localized globals to SSA registers.
1178 MPM
.addPass(createModuleToFunctionPassAdaptor(PromotePass()));
1180 // Linking modules together can lead to duplicate global constant, only
1181 // keep one copy of each constant.
1182 MPM
.addPass(ConstantMergePass());
1184 // Remove unused arguments from functions.
1185 MPM
.addPass(DeadArgumentEliminationPass());
1187 // Reduce the code after globalopt and ipsccp. Both can open up significant
1188 // simplification opportunities, and both can propagate functions through
1189 // function pointers. When this happens, we often have to resolve varargs
1190 // calls, etc, so let instcombine do this.
1191 FunctionPassManager
PeepholeFPM(DebugLogging
);
1193 PeepholeFPM
.addPass(AggressiveInstCombinePass());
1194 PeepholeFPM
.addPass(InstCombinePass());
1195 invokePeepholeEPCallbacks(PeepholeFPM
, Level
);
1197 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(PeepholeFPM
)));
1199 // Note: historically, the PruneEH pass was run first to deduce nounwind and
1200 // generally clean up exception handling overhead. It isn't clear this is
1201 // valuable as the inliner doesn't currently care whether it is inlining an
1202 // invoke or a call.
1203 // Run the inliner now.
1204 MPM
.addPass(createModuleToPostOrderCGSCCPassAdaptor(
1205 InlinerPass(getInlineParamsFromOptLevel(Level
))));
1207 // Optimize globals again after we ran the inliner.
1208 MPM
.addPass(GlobalOptPass());
1210 // Garbage collect dead functions.
1211 // FIXME: Add ArgumentPromotion pass after once it's ported.
1212 MPM
.addPass(GlobalDCEPass());
1214 FunctionPassManager
FPM(DebugLogging
);
1215 // The IPO Passes may leave cruft around. Clean up after them.
1216 FPM
.addPass(InstCombinePass());
1217 invokePeepholeEPCallbacks(FPM
, Level
);
1219 FPM
.addPass(JumpThreadingPass());
1221 // Do a post inline PGO instrumentation and use pass. This is a context
1222 // sensitive PGO pass.
1224 if (PGOOpt
->CSAction
== PGOOptions::CSIRInstr
)
1225 addPGOInstrPasses(MPM
, DebugLogging
, Level
, /* RunProfileGen */ true,
1226 /* IsCS */ true, PGOOpt
->CSProfileGenFile
,
1227 PGOOpt
->ProfileRemappingFile
);
1228 else if (PGOOpt
->CSAction
== PGOOptions::CSIRUse
)
1229 addPGOInstrPasses(MPM
, DebugLogging
, Level
, /* RunProfileGen */ false,
1230 /* IsCS */ true, PGOOpt
->ProfileFile
,
1231 PGOOpt
->ProfileRemappingFile
);
1235 FPM
.addPass(SROA());
1237 // LTO provides additional opportunities for tailcall elimination due to
1238 // link-time inlining, and visibility of nocapture attribute.
1239 FPM
.addPass(TailCallElimPass());
1241 // Run a few AA driver optimizations here and now to cleanup the code.
1242 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(FPM
)));
1244 MPM
.addPass(createModuleToPostOrderCGSCCPassAdaptor(
1245 PostOrderFunctionAttrsPass()));
1246 // FIXME: here we run IP alias analysis in the legacy PM.
1248 FunctionPassManager MainFPM
;
1250 // FIXME: once we fix LoopPass Manager, add LICM here.
1251 // FIXME: once we provide support for enabling MLSM, add it here.
1253 MainFPM
.addPass(NewGVNPass());
1255 MainFPM
.addPass(GVN());
1257 // Remove dead memcpy()'s.
1258 MainFPM
.addPass(MemCpyOptPass());
1260 // Nuke dead stores.
1261 MainFPM
.addPass(DSEPass());
1263 // FIXME: at this point, we run a bunch of loop passes:
1264 // indVarSimplify, loopDeletion, loopInterchange, loopUnroll,
1265 // loopVectorize. Enable them once the remaining issue with LPM
1268 MainFPM
.addPass(InstCombinePass());
1269 MainFPM
.addPass(SimplifyCFGPass());
1270 MainFPM
.addPass(SCCPPass());
1271 MainFPM
.addPass(InstCombinePass());
1272 MainFPM
.addPass(BDCEPass());
1274 // FIXME: We may want to run SLPVectorizer here.
1275 // After vectorization, assume intrinsics may tell us more
1276 // about pointer alignments.
1278 MainFPM
.add(AlignmentFromAssumptionsPass());
1281 // FIXME: Conditionally run LoadCombine here, after it's ported
1282 // (in case we still have this pass, given its questionable usefulness).
1284 MainFPM
.addPass(InstCombinePass());
1285 invokePeepholeEPCallbacks(MainFPM
, Level
);
1286 MainFPM
.addPass(JumpThreadingPass());
1287 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(MainFPM
)));
1289 // Create a function that performs CFI checks for cross-DSO calls with
1290 // targets in the current module.
1291 MPM
.addPass(CrossDSOCFIPass());
1293 // Lower type metadata and the type.test intrinsic. This pass supports
1294 // clang's control flow integrity mechanisms (-fsanitize=cfi*) and needs
1295 // to be run at link time if CFI is enabled. This pass does nothing if
1297 MPM
.addPass(LowerTypeTestsPass(ExportSummary
, nullptr));
1299 // Enable splitting late in the FullLTO post-link pipeline. This is done in
1300 // the same stage in the old pass manager (\ref addLateLTOOptimizationPasses).
1301 if (EnableHotColdSplit
)
1302 MPM
.addPass(HotColdSplittingPass());
1304 // Add late LTO optimization passes.
1305 // Delete basic blocks, which optimization passes may have killed.
1306 MPM
.addPass(createModuleToFunctionPassAdaptor(SimplifyCFGPass()));
1308 // Drop bodies of available eternally objects to improve GlobalDCE.
1309 MPM
.addPass(EliminateAvailableExternallyPass());
1311 // Now that we have optimized the program, discard unreachable functions.
1312 MPM
.addPass(GlobalDCEPass());
1314 // FIXME: Maybe enable MergeFuncs conditionally after it's ported.
1318 AAManager
PassBuilder::buildDefaultAAPipeline() {
1321 // The order in which these are registered determines their priority when
1324 // First we register the basic alias analysis that provides the majority of
1325 // per-function local AA logic. This is a stateless, on-demand local set of
1327 AA
.registerFunctionAnalysis
<BasicAA
>();
1329 // Next we query fast, specialized alias analyses that wrap IR-embedded
1330 // information about aliasing.
1331 AA
.registerFunctionAnalysis
<ScopedNoAliasAA
>();
1332 AA
.registerFunctionAnalysis
<TypeBasedAA
>();
1334 // Add support for querying global aliasing information when available.
1335 // Because the `AAManager` is a function analysis and `GlobalsAA` is a module
1336 // analysis, all that the `AAManager` can do is query for any *cached*
1337 // results from `GlobalsAA` through a readonly proxy.
1338 AA
.registerModuleAnalysis
<GlobalsAA
>();
1343 static Optional
<int> parseRepeatPassName(StringRef Name
) {
1344 if (!Name
.consume_front("repeat<") || !Name
.consume_back(">"))
1347 if (Name
.getAsInteger(0, Count
) || Count
<= 0)
1352 static Optional
<int> parseDevirtPassName(StringRef Name
) {
1353 if (!Name
.consume_front("devirt<") || !Name
.consume_back(">"))
1356 if (Name
.getAsInteger(0, Count
) || Count
<= 0)
1361 static bool checkParametrizedPassName(StringRef Name
, StringRef PassName
) {
1362 if (!Name
.consume_front(PassName
))
1364 // normal pass name w/o parameters == default parameters
1367 return Name
.startswith("<") && Name
.endswith(">");
1372 /// This performs customized parsing of pass name with parameters.
1374 /// We do not need parametrization of passes in textual pipeline very often,
1375 /// yet on a rare occasion ability to specify parameters right there can be
1378 /// \p Name - parameterized specification of a pass from a textual pipeline
1379 /// is a string in a form of :
1380 /// PassName '<' parameter-list '>'
1382 /// Parameter list is being parsed by the parser callable argument, \p Parser,
1383 /// It takes a string-ref of parameters and returns either StringError or a
1384 /// parameter list in a form of a custom parameters type, all wrapped into
1385 /// Expected<> template class.
1387 template <typename ParametersParseCallableT
>
1388 auto parsePassParameters(ParametersParseCallableT
&&Parser
, StringRef Name
,
1389 StringRef PassName
) -> decltype(Parser(StringRef
{})) {
1390 using ParametersT
= typename
decltype(Parser(StringRef
{}))::value_type
;
1392 StringRef Params
= Name
;
1393 if (!Params
.consume_front(PassName
)) {
1395 "unable to strip pass name from parametrized pass specification");
1398 return ParametersT
{};
1399 if (!Params
.consume_front("<") || !Params
.consume_back(">")) {
1400 assert(false && "invalid format for parametrized pass name");
1403 Expected
<ParametersT
> Result
= Parser(Params
);
1404 assert((Result
|| Result
.template errorIsA
<StringError
>()) &&
1405 "Pass parameter parser can only return StringErrors.");
1406 return std::move(Result
);
1409 /// Parser of parameters for LoopUnroll pass.
1410 Expected
<LoopUnrollOptions
> parseLoopUnrollOptions(StringRef Params
) {
1411 LoopUnrollOptions UnrollOpts
;
1412 while (!Params
.empty()) {
1413 StringRef ParamName
;
1414 std::tie(ParamName
, Params
) = Params
.split(';');
1415 int OptLevel
= StringSwitch
<int>(ParamName
)
1421 if (OptLevel
>= 0) {
1422 UnrollOpts
.setOptLevel(OptLevel
);
1426 bool Enable
= !ParamName
.consume_front("no-");
1427 if (ParamName
== "partial") {
1428 UnrollOpts
.setPartial(Enable
);
1429 } else if (ParamName
== "peeling") {
1430 UnrollOpts
.setPeeling(Enable
);
1431 } else if (ParamName
== "runtime") {
1432 UnrollOpts
.setRuntime(Enable
);
1433 } else if (ParamName
== "upperbound") {
1434 UnrollOpts
.setUpperBound(Enable
);
1436 return make_error
<StringError
>(
1437 formatv("invalid LoopUnrollPass parameter '{0}' ", ParamName
).str(),
1438 inconvertibleErrorCode());
1444 Expected
<MemorySanitizerOptions
> parseMSanPassOptions(StringRef Params
) {
1445 MemorySanitizerOptions Result
;
1446 while (!Params
.empty()) {
1447 StringRef ParamName
;
1448 std::tie(ParamName
, Params
) = Params
.split(';');
1450 if (ParamName
== "recover") {
1451 Result
.Recover
= true;
1452 } else if (ParamName
== "kernel") {
1453 Result
.Kernel
= true;
1454 } else if (ParamName
.consume_front("track-origins=")) {
1455 if (ParamName
.getAsInteger(0, Result
.TrackOrigins
))
1456 return make_error
<StringError
>(
1457 formatv("invalid argument to MemorySanitizer pass track-origins "
1458 "parameter: '{0}' ",
1461 inconvertibleErrorCode());
1463 return make_error
<StringError
>(
1464 formatv("invalid MemorySanitizer pass parameter '{0}' ", ParamName
)
1466 inconvertibleErrorCode());
1472 /// Parser of parameters for SimplifyCFG pass.
1473 Expected
<SimplifyCFGOptions
> parseSimplifyCFGOptions(StringRef Params
) {
1474 SimplifyCFGOptions Result
;
1475 while (!Params
.empty()) {
1476 StringRef ParamName
;
1477 std::tie(ParamName
, Params
) = Params
.split(';');
1479 bool Enable
= !ParamName
.consume_front("no-");
1480 if (ParamName
== "forward-switch-cond") {
1481 Result
.forwardSwitchCondToPhi(Enable
);
1482 } else if (ParamName
== "switch-to-lookup") {
1483 Result
.convertSwitchToLookupTable(Enable
);
1484 } else if (ParamName
== "keep-loops") {
1485 Result
.needCanonicalLoops(Enable
);
1486 } else if (ParamName
== "sink-common-insts") {
1487 Result
.sinkCommonInsts(Enable
);
1488 } else if (Enable
&& ParamName
.consume_front("bonus-inst-threshold=")) {
1489 APInt BonusInstThreshold
;
1490 if (ParamName
.getAsInteger(0, BonusInstThreshold
))
1491 return make_error
<StringError
>(
1492 formatv("invalid argument to SimplifyCFG pass bonus-threshold "
1493 "parameter: '{0}' ",
1495 inconvertibleErrorCode());
1496 Result
.bonusInstThreshold(BonusInstThreshold
.getSExtValue());
1498 return make_error
<StringError
>(
1499 formatv("invalid SimplifyCFG pass parameter '{0}' ", ParamName
).str(),
1500 inconvertibleErrorCode());
1506 /// Parser of parameters for LoopVectorize pass.
1507 Expected
<LoopVectorizeOptions
> parseLoopVectorizeOptions(StringRef Params
) {
1508 LoopVectorizeOptions Opts
;
1509 while (!Params
.empty()) {
1510 StringRef ParamName
;
1511 std::tie(ParamName
, Params
) = Params
.split(';');
1513 bool Enable
= !ParamName
.consume_front("no-");
1514 if (ParamName
== "interleave-forced-only") {
1515 Opts
.setInterleaveOnlyWhenForced(Enable
);
1516 } else if (ParamName
== "vectorize-forced-only") {
1517 Opts
.setVectorizeOnlyWhenForced(Enable
);
1519 return make_error
<StringError
>(
1520 formatv("invalid LoopVectorize parameter '{0}' ", ParamName
).str(),
1521 inconvertibleErrorCode());
1527 Expected
<bool> parseLoopUnswitchOptions(StringRef Params
) {
1528 bool Result
= false;
1529 while (!Params
.empty()) {
1530 StringRef ParamName
;
1531 std::tie(ParamName
, Params
) = Params
.split(';');
1533 bool Enable
= !ParamName
.consume_front("no-");
1534 if (ParamName
== "nontrivial") {
1537 return make_error
<StringError
>(
1538 formatv("invalid LoopUnswitch pass parameter '{0}' ", ParamName
)
1540 inconvertibleErrorCode());
1547 /// Tests whether a pass name starts with a valid prefix for a default pipeline
1549 static bool startsWithDefaultPipelineAliasPrefix(StringRef Name
) {
1550 return Name
.startswith("default") || Name
.startswith("thinlto") ||
1551 Name
.startswith("lto");
1554 /// Tests whether registered callbacks will accept a given pass name.
1556 /// When parsing a pipeline text, the type of the outermost pipeline may be
1557 /// omitted, in which case the type is automatically determined from the first
1558 /// pass name in the text. This may be a name that is handled through one of the
1559 /// callbacks. We check this through the oridinary parsing callbacks by setting
1560 /// up a dummy PassManager in order to not force the client to also handle this
1562 template <typename PassManagerT
, typename CallbacksT
>
1563 static bool callbacksAcceptPassName(StringRef Name
, CallbacksT
&Callbacks
) {
1564 if (!Callbacks
.empty()) {
1565 PassManagerT DummyPM
;
1566 for (auto &CB
: Callbacks
)
1567 if (CB(Name
, DummyPM
, {}))
1573 template <typename CallbacksT
>
1574 static bool isModulePassName(StringRef Name
, CallbacksT
&Callbacks
) {
1575 // Manually handle aliases for pre-configured pipeline fragments.
1576 if (startsWithDefaultPipelineAliasPrefix(Name
))
1577 return DefaultAliasRegex
.match(Name
);
1579 // Explicitly handle pass manager names.
1580 if (Name
== "module")
1582 if (Name
== "cgscc")
1584 if (Name
== "function")
1587 // Explicitly handle custom-parsed pass names.
1588 if (parseRepeatPassName(Name
))
1591 #define MODULE_PASS(NAME, CREATE_PASS) \
1594 #define MODULE_ANALYSIS(NAME, CREATE_PASS) \
1595 if (Name == "require<" NAME ">" || Name == "invalidate<" NAME ">") \
1597 #include "PassRegistry.def"
1599 return callbacksAcceptPassName
<ModulePassManager
>(Name
, Callbacks
);
1602 template <typename CallbacksT
>
1603 static bool isCGSCCPassName(StringRef Name
, CallbacksT
&Callbacks
) {
1604 // Explicitly handle pass manager names.
1605 if (Name
== "cgscc")
1607 if (Name
== "function")
1610 // Explicitly handle custom-parsed pass names.
1611 if (parseRepeatPassName(Name
))
1613 if (parseDevirtPassName(Name
))
1616 #define CGSCC_PASS(NAME, CREATE_PASS) \
1619 #define CGSCC_ANALYSIS(NAME, CREATE_PASS) \
1620 if (Name == "require<" NAME ">" || Name == "invalidate<" NAME ">") \
1622 #include "PassRegistry.def"
1624 return callbacksAcceptPassName
<CGSCCPassManager
>(Name
, Callbacks
);
1627 template <typename CallbacksT
>
1628 static bool isFunctionPassName(StringRef Name
, CallbacksT
&Callbacks
) {
1629 // Explicitly handle pass manager names.
1630 if (Name
== "function")
1635 // Explicitly handle custom-parsed pass names.
1636 if (parseRepeatPassName(Name
))
1639 #define FUNCTION_PASS(NAME, CREATE_PASS) \
1642 #define FUNCTION_PASS_WITH_PARAMS(NAME, CREATE_PASS, PARSER) \
1643 if (checkParametrizedPassName(Name, NAME)) \
1645 #define FUNCTION_ANALYSIS(NAME, CREATE_PASS) \
1646 if (Name == "require<" NAME ">" || Name == "invalidate<" NAME ">") \
1648 #include "PassRegistry.def"
1650 return callbacksAcceptPassName
<FunctionPassManager
>(Name
, Callbacks
);
1653 template <typename CallbacksT
>
1654 static bool isLoopPassName(StringRef Name
, CallbacksT
&Callbacks
) {
1655 // Explicitly handle pass manager names.
1659 // Explicitly handle custom-parsed pass names.
1660 if (parseRepeatPassName(Name
))
1663 #define LOOP_PASS(NAME, CREATE_PASS) \
1666 #define LOOP_PASS_WITH_PARAMS(NAME, CREATE_PASS, PARSER) \
1667 if (checkParametrizedPassName(Name, NAME)) \
1669 #define LOOP_ANALYSIS(NAME, CREATE_PASS) \
1670 if (Name == "require<" NAME ">" || Name == "invalidate<" NAME ">") \
1672 #include "PassRegistry.def"
1674 return callbacksAcceptPassName
<LoopPassManager
>(Name
, Callbacks
);
1677 Optional
<std::vector
<PassBuilder::PipelineElement
>>
1678 PassBuilder::parsePipelineText(StringRef Text
) {
1679 std::vector
<PipelineElement
> ResultPipeline
;
1681 SmallVector
<std::vector
<PipelineElement
> *, 4> PipelineStack
= {
1684 std::vector
<PipelineElement
> &Pipeline
= *PipelineStack
.back();
1685 size_t Pos
= Text
.find_first_of(",()");
1686 Pipeline
.push_back({Text
.substr(0, Pos
), {}});
1688 // If we have a single terminating name, we're done.
1689 if (Pos
== Text
.npos
)
1692 char Sep
= Text
[Pos
];
1693 Text
= Text
.substr(Pos
+ 1);
1695 // Just a name ending in a comma, continue.
1699 // Push the inner pipeline onto the stack to continue processing.
1700 PipelineStack
.push_back(&Pipeline
.back().InnerPipeline
);
1704 assert(Sep
== ')' && "Bogus separator!");
1705 // When handling the close parenthesis, we greedily consume them to avoid
1706 // empty strings in the pipeline.
1708 // If we try to pop the outer pipeline we have unbalanced parentheses.
1709 if (PipelineStack
.size() == 1)
1712 PipelineStack
.pop_back();
1713 } while (Text
.consume_front(")"));
1715 // Check if we've finished parsing.
1719 // Otherwise, the end of an inner pipeline always has to be followed by
1720 // a comma, and then we can continue.
1721 if (!Text
.consume_front(","))
1725 if (PipelineStack
.size() > 1)
1726 // Unbalanced paretheses.
1729 assert(PipelineStack
.back() == &ResultPipeline
&&
1730 "Wrong pipeline at the bottom of the stack!");
1731 return {std::move(ResultPipeline
)};
1734 Error
PassBuilder::parseModulePass(ModulePassManager
&MPM
,
1735 const PipelineElement
&E
,
1736 bool VerifyEachPass
, bool DebugLogging
) {
1737 auto &Name
= E
.Name
;
1738 auto &InnerPipeline
= E
.InnerPipeline
;
1740 // First handle complex passes like the pass managers which carry pipelines.
1741 if (!InnerPipeline
.empty()) {
1742 if (Name
== "module") {
1743 ModulePassManager
NestedMPM(DebugLogging
);
1744 if (auto Err
= parseModulePassPipeline(NestedMPM
, InnerPipeline
,
1745 VerifyEachPass
, DebugLogging
))
1747 MPM
.addPass(std::move(NestedMPM
));
1748 return Error::success();
1750 if (Name
== "cgscc") {
1751 CGSCCPassManager
CGPM(DebugLogging
);
1752 if (auto Err
= parseCGSCCPassPipeline(CGPM
, InnerPipeline
, VerifyEachPass
,
1755 MPM
.addPass(createModuleToPostOrderCGSCCPassAdaptor(std::move(CGPM
)));
1756 return Error::success();
1758 if (Name
== "function") {
1759 FunctionPassManager
FPM(DebugLogging
);
1760 if (auto Err
= parseFunctionPassPipeline(FPM
, InnerPipeline
,
1761 VerifyEachPass
, DebugLogging
))
1763 MPM
.addPass(createModuleToFunctionPassAdaptor(std::move(FPM
)));
1764 return Error::success();
1766 if (auto Count
= parseRepeatPassName(Name
)) {
1767 ModulePassManager
NestedMPM(DebugLogging
);
1768 if (auto Err
= parseModulePassPipeline(NestedMPM
, InnerPipeline
,
1769 VerifyEachPass
, DebugLogging
))
1771 MPM
.addPass(createRepeatedPass(*Count
, std::move(NestedMPM
)));
1772 return Error::success();
1775 for (auto &C
: ModulePipelineParsingCallbacks
)
1776 if (C(Name
, MPM
, InnerPipeline
))
1777 return Error::success();
1779 // Normal passes can't have pipelines.
1780 return make_error
<StringError
>(
1781 formatv("invalid use of '{0}' pass as module pipeline", Name
).str(),
1782 inconvertibleErrorCode());
1786 // Manually handle aliases for pre-configured pipeline fragments.
1787 if (startsWithDefaultPipelineAliasPrefix(Name
)) {
1788 SmallVector
<StringRef
, 3> Matches
;
1789 if (!DefaultAliasRegex
.match(Name
, &Matches
))
1790 return make_error
<StringError
>(
1791 formatv("unknown default pipeline alias '{0}'", Name
).str(),
1792 inconvertibleErrorCode());
1794 assert(Matches
.size() == 3 && "Must capture two matched strings!");
1796 OptimizationLevel L
= StringSwitch
<OptimizationLevel
>(Matches
[2])
1804 // At O0 we do nothing at all!
1805 return Error::success();
1807 if (Matches
[1] == "default") {
1808 MPM
.addPass(buildPerModuleDefaultPipeline(L
, DebugLogging
));
1809 } else if (Matches
[1] == "thinlto-pre-link") {
1810 MPM
.addPass(buildThinLTOPreLinkDefaultPipeline(L
, DebugLogging
));
1811 } else if (Matches
[1] == "thinlto") {
1812 MPM
.addPass(buildThinLTODefaultPipeline(L
, DebugLogging
, nullptr));
1813 } else if (Matches
[1] == "lto-pre-link") {
1814 MPM
.addPass(buildLTOPreLinkDefaultPipeline(L
, DebugLogging
));
1816 assert(Matches
[1] == "lto" && "Not one of the matched options!");
1817 MPM
.addPass(buildLTODefaultPipeline(L
, DebugLogging
, nullptr));
1819 return Error::success();
1822 // Finally expand the basic registered passes from the .inc file.
1823 #define MODULE_PASS(NAME, CREATE_PASS) \
1824 if (Name == NAME) { \
1825 MPM.addPass(CREATE_PASS); \
1826 return Error::success(); \
1828 #define MODULE_ANALYSIS(NAME, CREATE_PASS) \
1829 if (Name == "require<" NAME ">") { \
1831 RequireAnalysisPass< \
1832 std::remove_reference<decltype(CREATE_PASS)>::type, Module>()); \
1833 return Error::success(); \
1835 if (Name == "invalidate<" NAME ">") { \
1836 MPM.addPass(InvalidateAnalysisPass< \
1837 std::remove_reference<decltype(CREATE_PASS)>::type>()); \
1838 return Error::success(); \
1840 #include "PassRegistry.def"
1842 for (auto &C
: ModulePipelineParsingCallbacks
)
1843 if (C(Name
, MPM
, InnerPipeline
))
1844 return Error::success();
1845 return make_error
<StringError
>(
1846 formatv("unknown module pass '{0}'", Name
).str(),
1847 inconvertibleErrorCode());
1850 Error
PassBuilder::parseCGSCCPass(CGSCCPassManager
&CGPM
,
1851 const PipelineElement
&E
, bool VerifyEachPass
,
1852 bool DebugLogging
) {
1853 auto &Name
= E
.Name
;
1854 auto &InnerPipeline
= E
.InnerPipeline
;
1856 // First handle complex passes like the pass managers which carry pipelines.
1857 if (!InnerPipeline
.empty()) {
1858 if (Name
== "cgscc") {
1859 CGSCCPassManager
NestedCGPM(DebugLogging
);
1860 if (auto Err
= parseCGSCCPassPipeline(NestedCGPM
, InnerPipeline
,
1861 VerifyEachPass
, DebugLogging
))
1863 // Add the nested pass manager with the appropriate adaptor.
1864 CGPM
.addPass(std::move(NestedCGPM
));
1865 return Error::success();
1867 if (Name
== "function") {
1868 FunctionPassManager
FPM(DebugLogging
);
1869 if (auto Err
= parseFunctionPassPipeline(FPM
, InnerPipeline
,
1870 VerifyEachPass
, DebugLogging
))
1872 // Add the nested pass manager with the appropriate adaptor.
1873 CGPM
.addPass(createCGSCCToFunctionPassAdaptor(std::move(FPM
)));
1874 return Error::success();
1876 if (auto Count
= parseRepeatPassName(Name
)) {
1877 CGSCCPassManager
NestedCGPM(DebugLogging
);
1878 if (auto Err
= parseCGSCCPassPipeline(NestedCGPM
, InnerPipeline
,
1879 VerifyEachPass
, DebugLogging
))
1881 CGPM
.addPass(createRepeatedPass(*Count
, std::move(NestedCGPM
)));
1882 return Error::success();
1884 if (auto MaxRepetitions
= parseDevirtPassName(Name
)) {
1885 CGSCCPassManager
NestedCGPM(DebugLogging
);
1886 if (auto Err
= parseCGSCCPassPipeline(NestedCGPM
, InnerPipeline
,
1887 VerifyEachPass
, DebugLogging
))
1890 createDevirtSCCRepeatedPass(std::move(NestedCGPM
), *MaxRepetitions
));
1891 return Error::success();
1894 for (auto &C
: CGSCCPipelineParsingCallbacks
)
1895 if (C(Name
, CGPM
, InnerPipeline
))
1896 return Error::success();
1898 // Normal passes can't have pipelines.
1899 return make_error
<StringError
>(
1900 formatv("invalid use of '{0}' pass as cgscc pipeline", Name
).str(),
1901 inconvertibleErrorCode());
1904 // Now expand the basic registered passes from the .inc file.
1905 #define CGSCC_PASS(NAME, CREATE_PASS) \
1906 if (Name == NAME) { \
1907 CGPM.addPass(CREATE_PASS); \
1908 return Error::success(); \
1910 #define CGSCC_ANALYSIS(NAME, CREATE_PASS) \
1911 if (Name == "require<" NAME ">") { \
1912 CGPM.addPass(RequireAnalysisPass< \
1913 std::remove_reference<decltype(CREATE_PASS)>::type, \
1914 LazyCallGraph::SCC, CGSCCAnalysisManager, LazyCallGraph &, \
1915 CGSCCUpdateResult &>()); \
1916 return Error::success(); \
1918 if (Name == "invalidate<" NAME ">") { \
1919 CGPM.addPass(InvalidateAnalysisPass< \
1920 std::remove_reference<decltype(CREATE_PASS)>::type>()); \
1921 return Error::success(); \
1923 #include "PassRegistry.def"
1925 for (auto &C
: CGSCCPipelineParsingCallbacks
)
1926 if (C(Name
, CGPM
, InnerPipeline
))
1927 return Error::success();
1928 return make_error
<StringError
>(
1929 formatv("unknown cgscc pass '{0}'", Name
).str(),
1930 inconvertibleErrorCode());
1933 Error
PassBuilder::parseFunctionPass(FunctionPassManager
&FPM
,
1934 const PipelineElement
&E
,
1935 bool VerifyEachPass
, bool DebugLogging
) {
1936 auto &Name
= E
.Name
;
1937 auto &InnerPipeline
= E
.InnerPipeline
;
1939 // First handle complex passes like the pass managers which carry pipelines.
1940 if (!InnerPipeline
.empty()) {
1941 if (Name
== "function") {
1942 FunctionPassManager
NestedFPM(DebugLogging
);
1943 if (auto Err
= parseFunctionPassPipeline(NestedFPM
, InnerPipeline
,
1944 VerifyEachPass
, DebugLogging
))
1946 // Add the nested pass manager with the appropriate adaptor.
1947 FPM
.addPass(std::move(NestedFPM
));
1948 return Error::success();
1950 if (Name
== "loop") {
1951 LoopPassManager
LPM(DebugLogging
);
1952 if (auto Err
= parseLoopPassPipeline(LPM
, InnerPipeline
, VerifyEachPass
,
1955 // Add the nested pass manager with the appropriate adaptor.
1957 createFunctionToLoopPassAdaptor(std::move(LPM
), DebugLogging
));
1958 return Error::success();
1960 if (auto Count
= parseRepeatPassName(Name
)) {
1961 FunctionPassManager
NestedFPM(DebugLogging
);
1962 if (auto Err
= parseFunctionPassPipeline(NestedFPM
, InnerPipeline
,
1963 VerifyEachPass
, DebugLogging
))
1965 FPM
.addPass(createRepeatedPass(*Count
, std::move(NestedFPM
)));
1966 return Error::success();
1969 for (auto &C
: FunctionPipelineParsingCallbacks
)
1970 if (C(Name
, FPM
, InnerPipeline
))
1971 return Error::success();
1973 // Normal passes can't have pipelines.
1974 return make_error
<StringError
>(
1975 formatv("invalid use of '{0}' pass as function pipeline", Name
).str(),
1976 inconvertibleErrorCode());
1979 // Now expand the basic registered passes from the .inc file.
1980 #define FUNCTION_PASS(NAME, CREATE_PASS) \
1981 if (Name == NAME) { \
1982 FPM.addPass(CREATE_PASS); \
1983 return Error::success(); \
1985 #define FUNCTION_PASS_WITH_PARAMS(NAME, CREATE_PASS, PARSER) \
1986 if (checkParametrizedPassName(Name, NAME)) { \
1987 auto Params = parsePassParameters(PARSER, Name, NAME); \
1989 return Params.takeError(); \
1990 FPM.addPass(CREATE_PASS(Params.get())); \
1991 return Error::success(); \
1993 #define FUNCTION_ANALYSIS(NAME, CREATE_PASS) \
1994 if (Name == "require<" NAME ">") { \
1996 RequireAnalysisPass< \
1997 std::remove_reference<decltype(CREATE_PASS)>::type, Function>()); \
1998 return Error::success(); \
2000 if (Name == "invalidate<" NAME ">") { \
2001 FPM.addPass(InvalidateAnalysisPass< \
2002 std::remove_reference<decltype(CREATE_PASS)>::type>()); \
2003 return Error::success(); \
2005 #include "PassRegistry.def"
2007 for (auto &C
: FunctionPipelineParsingCallbacks
)
2008 if (C(Name
, FPM
, InnerPipeline
))
2009 return Error::success();
2010 return make_error
<StringError
>(
2011 formatv("unknown function pass '{0}'", Name
).str(),
2012 inconvertibleErrorCode());
2015 Error
PassBuilder::parseLoopPass(LoopPassManager
&LPM
, const PipelineElement
&E
,
2016 bool VerifyEachPass
, bool DebugLogging
) {
2017 StringRef Name
= E
.Name
;
2018 auto &InnerPipeline
= E
.InnerPipeline
;
2020 // First handle complex passes like the pass managers which carry pipelines.
2021 if (!InnerPipeline
.empty()) {
2022 if (Name
== "loop") {
2023 LoopPassManager
NestedLPM(DebugLogging
);
2024 if (auto Err
= parseLoopPassPipeline(NestedLPM
, InnerPipeline
,
2025 VerifyEachPass
, DebugLogging
))
2027 // Add the nested pass manager with the appropriate adaptor.
2028 LPM
.addPass(std::move(NestedLPM
));
2029 return Error::success();
2031 if (auto Count
= parseRepeatPassName(Name
)) {
2032 LoopPassManager
NestedLPM(DebugLogging
);
2033 if (auto Err
= parseLoopPassPipeline(NestedLPM
, InnerPipeline
,
2034 VerifyEachPass
, DebugLogging
))
2036 LPM
.addPass(createRepeatedPass(*Count
, std::move(NestedLPM
)));
2037 return Error::success();
2040 for (auto &C
: LoopPipelineParsingCallbacks
)
2041 if (C(Name
, LPM
, InnerPipeline
))
2042 return Error::success();
2044 // Normal passes can't have pipelines.
2045 return make_error
<StringError
>(
2046 formatv("invalid use of '{0}' pass as loop pipeline", Name
).str(),
2047 inconvertibleErrorCode());
2050 // Now expand the basic registered passes from the .inc file.
2051 #define LOOP_PASS(NAME, CREATE_PASS) \
2052 if (Name == NAME) { \
2053 LPM.addPass(CREATE_PASS); \
2054 return Error::success(); \
2056 #define LOOP_PASS_WITH_PARAMS(NAME, CREATE_PASS, PARSER) \
2057 if (checkParametrizedPassName(Name, NAME)) { \
2058 auto Params = parsePassParameters(PARSER, Name, NAME); \
2060 return Params.takeError(); \
2061 LPM.addPass(CREATE_PASS(Params.get())); \
2062 return Error::success(); \
2064 #define LOOP_ANALYSIS(NAME, CREATE_PASS) \
2065 if (Name == "require<" NAME ">") { \
2066 LPM.addPass(RequireAnalysisPass< \
2067 std::remove_reference<decltype(CREATE_PASS)>::type, Loop, \
2068 LoopAnalysisManager, LoopStandardAnalysisResults &, \
2070 return Error::success(); \
2072 if (Name == "invalidate<" NAME ">") { \
2073 LPM.addPass(InvalidateAnalysisPass< \
2074 std::remove_reference<decltype(CREATE_PASS)>::type>()); \
2075 return Error::success(); \
2077 #include "PassRegistry.def"
2079 for (auto &C
: LoopPipelineParsingCallbacks
)
2080 if (C(Name
, LPM
, InnerPipeline
))
2081 return Error::success();
2082 return make_error
<StringError
>(formatv("unknown loop pass '{0}'", Name
).str(),
2083 inconvertibleErrorCode());
2086 bool PassBuilder::parseAAPassName(AAManager
&AA
, StringRef Name
) {
2087 #define MODULE_ALIAS_ANALYSIS(NAME, CREATE_PASS) \
2088 if (Name == NAME) { \
2089 AA.registerModuleAnalysis< \
2090 std::remove_reference<decltype(CREATE_PASS)>::type>(); \
2093 #define FUNCTION_ALIAS_ANALYSIS(NAME, CREATE_PASS) \
2094 if (Name == NAME) { \
2095 AA.registerFunctionAnalysis< \
2096 std::remove_reference<decltype(CREATE_PASS)>::type>(); \
2099 #include "PassRegistry.def"
2101 for (auto &C
: AAParsingCallbacks
)
2107 Error
PassBuilder::parseLoopPassPipeline(LoopPassManager
&LPM
,
2108 ArrayRef
<PipelineElement
> Pipeline
,
2109 bool VerifyEachPass
,
2110 bool DebugLogging
) {
2111 for (const auto &Element
: Pipeline
) {
2112 if (auto Err
= parseLoopPass(LPM
, Element
, VerifyEachPass
, DebugLogging
))
2114 // FIXME: No verifier support for Loop passes!
2116 return Error::success();
2119 Error
PassBuilder::parseFunctionPassPipeline(FunctionPassManager
&FPM
,
2120 ArrayRef
<PipelineElement
> Pipeline
,
2121 bool VerifyEachPass
,
2122 bool DebugLogging
) {
2123 for (const auto &Element
: Pipeline
) {
2125 parseFunctionPass(FPM
, Element
, VerifyEachPass
, DebugLogging
))
2128 FPM
.addPass(VerifierPass());
2130 return Error::success();
2133 Error
PassBuilder::parseCGSCCPassPipeline(CGSCCPassManager
&CGPM
,
2134 ArrayRef
<PipelineElement
> Pipeline
,
2135 bool VerifyEachPass
,
2136 bool DebugLogging
) {
2137 for (const auto &Element
: Pipeline
) {
2138 if (auto Err
= parseCGSCCPass(CGPM
, Element
, VerifyEachPass
, DebugLogging
))
2140 // FIXME: No verifier support for CGSCC passes!
2142 return Error::success();
2145 void PassBuilder::crossRegisterProxies(LoopAnalysisManager
&LAM
,
2146 FunctionAnalysisManager
&FAM
,
2147 CGSCCAnalysisManager
&CGAM
,
2148 ModuleAnalysisManager
&MAM
) {
2149 MAM
.registerPass([&] { return FunctionAnalysisManagerModuleProxy(FAM
); });
2150 MAM
.registerPass([&] { return CGSCCAnalysisManagerModuleProxy(CGAM
); });
2151 CGAM
.registerPass([&] { return ModuleAnalysisManagerCGSCCProxy(MAM
); });
2152 FAM
.registerPass([&] { return CGSCCAnalysisManagerFunctionProxy(CGAM
); });
2153 FAM
.registerPass([&] { return ModuleAnalysisManagerFunctionProxy(MAM
); });
2154 FAM
.registerPass([&] { return LoopAnalysisManagerFunctionProxy(LAM
); });
2155 LAM
.registerPass([&] { return FunctionAnalysisManagerLoopProxy(FAM
); });
2158 Error
PassBuilder::parseModulePassPipeline(ModulePassManager
&MPM
,
2159 ArrayRef
<PipelineElement
> Pipeline
,
2160 bool VerifyEachPass
,
2161 bool DebugLogging
) {
2162 for (const auto &Element
: Pipeline
) {
2163 if (auto Err
= parseModulePass(MPM
, Element
, VerifyEachPass
, DebugLogging
))
2166 MPM
.addPass(VerifierPass());
2168 return Error::success();
2171 // Primary pass pipeline description parsing routine for a \c ModulePassManager
2172 // FIXME: Should this routine accept a TargetMachine or require the caller to
2173 // pre-populate the analysis managers with target-specific stuff?
2174 Error
PassBuilder::parsePassPipeline(ModulePassManager
&MPM
,
2175 StringRef PipelineText
,
2176 bool VerifyEachPass
, bool DebugLogging
) {
2177 auto Pipeline
= parsePipelineText(PipelineText
);
2178 if (!Pipeline
|| Pipeline
->empty())
2179 return make_error
<StringError
>(
2180 formatv("invalid pipeline '{0}'", PipelineText
).str(),
2181 inconvertibleErrorCode());
2183 // If the first name isn't at the module layer, wrap the pipeline up
2185 StringRef FirstName
= Pipeline
->front().Name
;
2187 if (!isModulePassName(FirstName
, ModulePipelineParsingCallbacks
)) {
2188 if (isCGSCCPassName(FirstName
, CGSCCPipelineParsingCallbacks
)) {
2189 Pipeline
= {{"cgscc", std::move(*Pipeline
)}};
2190 } else if (isFunctionPassName(FirstName
,
2191 FunctionPipelineParsingCallbacks
)) {
2192 Pipeline
= {{"function", std::move(*Pipeline
)}};
2193 } else if (isLoopPassName(FirstName
, LoopPipelineParsingCallbacks
)) {
2194 Pipeline
= {{"function", {{"loop", std::move(*Pipeline
)}}}};
2196 for (auto &C
: TopLevelPipelineParsingCallbacks
)
2197 if (C(MPM
, *Pipeline
, VerifyEachPass
, DebugLogging
))
2198 return Error::success();
2200 // Unknown pass or pipeline name!
2201 auto &InnerPipeline
= Pipeline
->front().InnerPipeline
;
2202 return make_error
<StringError
>(
2203 formatv("unknown {0} name '{1}'",
2204 (InnerPipeline
.empty() ? "pass" : "pipeline"), FirstName
)
2206 inconvertibleErrorCode());
2211 parseModulePassPipeline(MPM
, *Pipeline
, VerifyEachPass
, DebugLogging
))
2213 return Error::success();
2216 // Primary pass pipeline description parsing routine for a \c CGSCCPassManager
2217 Error
PassBuilder::parsePassPipeline(CGSCCPassManager
&CGPM
,
2218 StringRef PipelineText
,
2219 bool VerifyEachPass
, bool DebugLogging
) {
2220 auto Pipeline
= parsePipelineText(PipelineText
);
2221 if (!Pipeline
|| Pipeline
->empty())
2222 return make_error
<StringError
>(
2223 formatv("invalid pipeline '{0}'", PipelineText
).str(),
2224 inconvertibleErrorCode());
2226 StringRef FirstName
= Pipeline
->front().Name
;
2227 if (!isCGSCCPassName(FirstName
, CGSCCPipelineParsingCallbacks
))
2228 return make_error
<StringError
>(
2229 formatv("unknown cgscc pass '{0}' in pipeline '{1}'", FirstName
,
2232 inconvertibleErrorCode());
2235 parseCGSCCPassPipeline(CGPM
, *Pipeline
, VerifyEachPass
, DebugLogging
))
2237 return Error::success();
2240 // Primary pass pipeline description parsing routine for a \c
2241 // FunctionPassManager
2242 Error
PassBuilder::parsePassPipeline(FunctionPassManager
&FPM
,
2243 StringRef PipelineText
,
2244 bool VerifyEachPass
, bool DebugLogging
) {
2245 auto Pipeline
= parsePipelineText(PipelineText
);
2246 if (!Pipeline
|| Pipeline
->empty())
2247 return make_error
<StringError
>(
2248 formatv("invalid pipeline '{0}'", PipelineText
).str(),
2249 inconvertibleErrorCode());
2251 StringRef FirstName
= Pipeline
->front().Name
;
2252 if (!isFunctionPassName(FirstName
, FunctionPipelineParsingCallbacks
))
2253 return make_error
<StringError
>(
2254 formatv("unknown function pass '{0}' in pipeline '{1}'", FirstName
,
2257 inconvertibleErrorCode());
2259 if (auto Err
= parseFunctionPassPipeline(FPM
, *Pipeline
, VerifyEachPass
,
2262 return Error::success();
2265 // Primary pass pipeline description parsing routine for a \c LoopPassManager
2266 Error
PassBuilder::parsePassPipeline(LoopPassManager
&CGPM
,
2267 StringRef PipelineText
,
2268 bool VerifyEachPass
, bool DebugLogging
) {
2269 auto Pipeline
= parsePipelineText(PipelineText
);
2270 if (!Pipeline
|| Pipeline
->empty())
2271 return make_error
<StringError
>(
2272 formatv("invalid pipeline '{0}'", PipelineText
).str(),
2273 inconvertibleErrorCode());
2276 parseLoopPassPipeline(CGPM
, *Pipeline
, VerifyEachPass
, DebugLogging
))
2279 return Error::success();
2282 Error
PassBuilder::parseAAPipeline(AAManager
&AA
, StringRef PipelineText
) {
2283 // If the pipeline just consists of the word 'default' just replace the AA
2284 // manager with our default one.
2285 if (PipelineText
== "default") {
2286 AA
= buildDefaultAAPipeline();
2287 return Error::success();
2290 while (!PipelineText
.empty()) {
2292 std::tie(Name
, PipelineText
) = PipelineText
.split(',');
2293 if (!parseAAPassName(AA
, Name
))
2294 return make_error
<StringError
>(
2295 formatv("unknown alias analysis name '{0}'", Name
).str(),
2296 inconvertibleErrorCode());
2299 return Error::success();